An atomizer structure
By designing a atomizer structure including a mist-outlet guide, an air-outlet guide and an air-induced connection, the existing atomizer's insufficient mist output force and liquid overflow problems are solved, and a larger range of mist emission and better mist output effect is achieved, while simplifying the structure and reducing the risk of damage.
Patent Information
- Application Number
- CN202010235166.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-03-30
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2040-03-30
AI Technical Summary
The existing atomizers have insufficient fog ejection force without a fan, and the mist liquid is emitted in a small range, which makes the use of poor effect; while the atomizers equipped with fans are prone to liquid overflow and damage due to the low air outlet channel setting.
A atomizer structure is designed, including a bottom shell, a water tank shell, a first partition, a mist outlet guide, a air outlet guide, a blower and a air outlet connection. The air outlet guide extends upwardly near the upper port of the water tank housing, and the air outlet connection guides the air in the air outlet guide to the mist outlet guide, increasing the air pressure in the mist outlet guide.
By increasing the air pressure in the mist outlet guide, the mist ejection force and the mist dissipation range are increased, and the mist effect is improved. At the same time, water overflows into and out of the air guide, reducing the risk of damage, and simplifying the water replenishment structure and reducing the complexity of implementation.
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Figure CN111266203B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an atomizer structure. Background Art
[0002] At present, the atomizing spraying force of a common atomizer without a blower is not large. The atomized liquid after spraying is only dispersed in a small area near the atomizer, and the dispersion range is not large, resulting in poor use effects.
[0003] For some atomizers provided with a blower, the air outlet of the blower is arranged above the atomizing sheet relatively close to it, and the setting height is relatively low. The atomizer with this structure adopts a split structure, that is, both the atomizing sheet and the air outlet of the blower are arranged on the base, and then a water tank is detachably placed at the upper end of the base. In order to prevent water from overflowing at the joint between the base and the water tank, a controllable and relatively complex water replenishing structure needs to be set between the base and the water tank to control the liquid level height on the base; in addition, when moving this atomizer, the liquid inside may slosh and overflow into the air outlet with a relatively low setting height, flow back through the air outlet to the blower or the internal control circuit board, causing damage and thus affecting the use.
[0004] Therefore, how to overcome the above-mentioned defects has become an important issue that needs to be solved urgently by those skilled in the art. Summary of the Invention
[0005] The present invention overcomes the above-mentioned technical deficiencies and provides an atomizer structure.
[0006] To achieve the above purpose, the present invention adopts the following technical solutions:
[0007] An atomizer structure includes a bottom case 1 and a water tank housing 2 installed thereon. A first partition 21 for upper and lower separation is integrally formed in the water tank housing 2. The upper side of the first partition 21 is a liquid storage area. The first partition 21 is provided with an atomizing sheet 3 and a mist outlet guiding member 4 covering the upper side of the atomizing sheet 3 and extending upward to near the upper port of the water tank housing 2. An air outlet guiding member 5 extending upward to near the upper port of the water tank housing 2 is integrally formed on the first partition 21 outside the mist outlet guiding member 4. A blower 6 for blowing air into the air outlet guiding member 5 is installed at the lower end of the first partition 21. A wind guiding connecting member 7 for guiding the air in the air outlet guiding member 5 to the mist outlet guiding member 4 and not obstructing the mist outlet of the mist outlet guiding member 4 is provided between the upper ends of the mist outlet guiding member 4 and the air outlet guiding member 5.
[0008] For the atomizer structure as described above, the wind guiding connecting member 7 at the end connected to the mist outlet guiding member 4 is provided with an annular groove interface 71 with an opening facing downward for guiding air to the mist outlet guiding member 4, and a vertical channel 72 that does not obstruct the mist outlet of the mist outlet guiding member 4 is left in the middle of the annular groove interface 71.
[0009] An atomizer structure as described above, wherein the air guiding connector 7 is detachably clamped with the mist outlet guiding member 4 and the air outlet guiding member 5 up and down respectively, and the height of the inner ring edge 711 of the annular groove interface 71 is lower than that of the outer ring edge 712 so that the inner ring edge 711 extends into the upper port of the mist outlet guiding member 4.
[0010] An atomizer structure as described above, wherein a plurality of vertically extending convex edges 41 are protruded from the inner side wall of the upper port of the mist outlet guiding member 4, and a wind guiding area 42 is formed between adjacent vertically extending convex edges 41.
[0011] An atomizer structure as described above, wherein a lower groove 211 is provided at the upper end of the first partition 21, the atomizing sheet 3 is installed at the bottom end of the lower groove 211, and the lower end of the mist outlet guiding member 4 is clamped in the lower groove 211.
[0012] An atomizer structure as described above, wherein an electrolyzer 8 extending into the lower groove 211 is installed at the bottom end of the first partition 21 and / or an ultraviolet lamp 9 extending into the lower groove 211 is installed at the bottom end of the first partition 21.
[0013] An atomizer structure as described above, wherein the lower groove 211 is oval-shaped, the outer contour of the lower end of the mist outlet guiding member 4 is thick and short and is oval-shaped to cooperate with the lower groove 211, the outer contour of the upper end is slender and is cylindrical, and a water replenishing hole 40 communicating inside and outside is provided on the side wall of the lower end of the mist outlet guiding member 4.
[0014] An atomizer structure as described above, wherein an annular upper cover 10 that does not obstruct the mist outlet of the mist outlet guiding member 4 is covered on the upper port of the water tank housing 2, and a flared guiding surface 81 for facilitating liquid addition into the water tank housing 2 is provided at the upper end of the annular upper cover 10.
[0015] An atomizer structure as described above, wherein an annular convex edge 73 is provided on the upper side of the annular groove interface 71, a mist outlet cover 11 is clamped on the annular convex edge 73, and a mist outlet 111 is provided on the mist outlet cover 11.
[0016] An atomizer structure as described above, wherein a second partition 22 is integrally formed between one side of the upper port of the water tank housing 2 and one side of the first partition 21, a space for installing a display module 12 is formed between the second partition 22 and the side wall of the water tank housing 2 and is separated from the liquid storage area, and a display window 13 is correspondingly opened on the side wall of the water tank housing 2.
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] 1. The structure of this case is simple and easy to implement. The setting that the air outlet guiding member extends upward to near the upper port of the water tank housing can well avoid the situation that the water in the water tank housing overflows into the air outlet guiding member, and has good practicability. The setting of the mist outlet guiding member is convenient for centralized mist output. The setting of the air guiding connecting member is convenient for guiding the air in the air outlet guiding member to the mist outlet guiding member to increase the air pressure in the mist outlet guiding member, so that the mist spraying force is relatively large, the mist liquid dispersion range is relatively large, the mist output effect is good, and the practicability is good. In addition, since the upper side of the first partition is the liquid storage area and the lower side of the first partition is not the liquid storage area, there is no need to set a controllable and relatively complex water replenishing structure between the upper and lower sides of the first partition to control the liquid level height of the lower side of the first partition, thereby reducing the implementation trouble.
[0019] 2. The setting of the downward-opening annular groove interface of the air guiding connecting member in this case is convenient for guiding the air along the inner side wall of the mist outlet guiding member into it, increasing the air pressure in the mist outlet guiding member, forcing the mist liquid in the mist outlet guiding member to spray out vigorously from the vertical channel, and having a good mist output effect and good practicability.
[0020] 3. A plurality of downward-extending vertical convex edges are convexly provided on the inner side wall of the upper port of the mist outlet guiding member, and a wind guiding area is formed between adjacent vertical convex edges, which is beneficial to making the air coming out of the annular groove interface flow better along the inner side wall of the mist outlet guiding member downward, forcing the mist liquid in the mist outlet guiding member to spray out vigorously from the vertical channel, and having a good mist output effect and good practicability.
[0021] 4. The setting of the electrolyzer in this case can be used to electrolyze water to generate hydrogen and oxygen or electrolyze brine to generate hypochlorous acid, and after atomization, it is used for air disinfection. The setting of the ultraviolet lamp is convenient for ultraviolet disinfection and sterilization in the lower groove, and has good practicability.
[0022] 5. The setting that the mist outlet guiding member is thicker at the lower part and thinner at the upper part makes the installation more stable and beautiful.
[0023] 6. The setting of the flared diversion surface at the upper end of the annular upper cover in this case makes it unnecessary to open the annular upper cover when adding liquid to the water tank housing. As long as the liquid is poured onto the flared diversion surface, it can fall into the water tank housing along it, which is convenient to use and has good practicability.
[0024] 6. The setting of the second partition in this case makes a space separated from the liquid storage area formed between the second partition and the side wall of the water tank housing, so as to facilitate the installation of the display module, form an atomizer with a display module on the side wall, and thus improve the market competitiveness. Description of the Drawings
[0025] Figure 1 is the three-dimensional view of this case.
[0026] Figure 2 is one of the partial structural diagrams of this case.
[0027] Figure 3 is the second of the partial structural diagrams of this case.
[0028] Figure 4 is the third of the partial structural diagrams of this case.
[0029] Figure 5 is the fourth of the partial structural diagrams of this case.
[0030] Figure 6 is the perspective view of the mist outlet guiding part of this case
[0031] Figure 7 is the perspective view of the air guiding connecting part of this case. Specific embodiments
[0032] The features of the present invention and other related features are further described in detail through the following embodiments for the understanding of those skilled in the same industry:
[0033] As Figures 1 to 7 shown, an atomizer structure includes a bottom shell 1 and a water tank shell 2 installed thereon. A first partition 21 for upper and lower separation is integrally formed in the water tank shell 2. The upper side of the first partition 21 is a liquid storage area. The first partition 21 is provided with an atomizing sheet 3 and a mist outlet guiding part 4 that covers the atomizing sheet 3 and extends upward to near the upper port of the water tank shell 2. An air outlet guiding part 5 that extends upward to near the upper port of the water tank shell 2 is integrally formed on the first partition 21 outside the mist outlet guiding part 4. A blower 6 for blowing air into the air outlet guiding part 5 is installed at the lower end of the first partition 21. A wind guiding connecting part 7 for guiding the air in the air outlet guiding part 5 to the mist outlet guiding part 4 and not hindering the mist outlet of the mist outlet guiding part 4 is provided between the upper end of the mist outlet guiding part 4 and the upper end of the air outlet guiding part 5.
[0034] As described above, the structure of this case is simple and easy to implement. The setting that the air outlet guiding part 5 extends upward to near the upper port of the water tank shell 2 can well avoid the situation that the water in the water tank shell 2 overflows into the air outlet guiding part 5, and has good practicability; the setting of the mist outlet guiding part 4 is convenient for centralized mist outlet. The setting of the wind guiding connecting part 7 is convenient for guiding the air in the air outlet guiding part 5 to the mist outlet guiding part 4 to increase the air pressure in the mist outlet guiding part 4, so that the mist spraying force is relatively large, the mist liquid dispersion range is relatively large, and the mist outlet effect is good, and the practicability is good; in addition, since the upper side of the first partition 21 is a liquid storage area, and the lower side of the first partition 21 is not a liquid storage area, thus, it is not necessary to set a controllable and relatively complex water replenishing structure between the upper and lower sides of the first partition 21 to control the liquid level height of the lower side of the first partition 21, thereby reducing the trouble of implementation.
[0035] As described above, in specific implementation, the air guiding connector 7 at the end connected to the mist outlet guiding member 4 is provided with an annular groove interface 71 with an opening facing downwards for guiding air towards the mist outlet guiding member 4, and a vertical channel 72 that does not obstruct the mist outlet of the mist outlet guiding member 4 is left in the middle of the annular groove interface 71.
[0036] As described above, the setting of the annular groove interface 71 with an opening facing downwards of the air guiding connector 7 in this case facilitates guiding air along the inner side wall of the mist outlet guiding member 4 into it, increasing the air pressure in the mist outlet guiding member 4, forcing the mist liquid in the mist outlet guiding member 4 to spray out vigorously from the vertical channel 72, and having a better mist outlet effect and good practicability.
[0037] As described above, in specific implementation, the air guiding connector 7 is detachably clamped with the mist outlet guiding member 4 and the air outlet guiding member 5 up and down respectively, and the height of the inner ring edge 711 of the annular groove interface 71 is lower than the height of the outer ring edge 712 so that the inner ring edge 711 extends into the upper port of the mist outlet guiding member 4.
[0038] As described above, in specific implementation, a plurality of vertically extending vertical convex edges 41 are convexly provided on the inner side wall of the upper port of the mist outlet guiding member 4, and a wind guiding area 42 is formed between adjacent vertical convex edges 41, which is beneficial to making the air coming out of the annular groove interface 71 flow better along the inner side wall of the mist outlet guiding member 4 downwards, forcing the mist liquid in the mist outlet guiding member 4 to spray out vigorously from the vertical channel 72, and having a better mist outlet effect and good practicability.
[0039] As described above, in specific implementation, a lower groove 211 is provided at the upper end of the first partition 21, the atomizing sheet 3 is installed at the bottom end of the lower groove 211, and the lower end of the mist outlet guiding member 4 is clamped in the lower groove 211. In this way, it is convenient to install the mist outlet guiding member 4.
[0040] As described above, in specific implementation, an electrolyzer 8 extending into the lower groove 211 is installed at the bottom end of the first partition 21 and / or an ultraviolet lamp 9 extending into the lower groove 211 is installed at the bottom end of the first partition 21.
[0041] As described above, the setting of the electrolyzer 8 in this case can be used to electrolyze water to generate hydrogen and oxygen or electrolyze brine to generate hypochlorous acid, and after atomization, it is used for air disinfection. And the setting of the ultraviolet lamp 9 facilitates ultraviolet disinfection and sterilization in the lower groove 211, and has good practicability.
[0042] As described above, in specific implementation, the lower groove 211 is elliptical, the outer contour of the lower end of the mist outlet guiding member 4 is relatively thick and short and is elliptical to match the lower groove 211, the outer contour of the upper end is relatively slender and is cylindrical, and a water replenishing hole 40 communicating inside and outside is provided on the side wall of the lower end of the mist outlet guiding member 4.
[0043] As described above, the fog outlet guide 4 is thicker at the bottom and thinner at the top, which makes the installation more stable and beautiful.
[0044] As described above, in specific implementation, the upper port of the water tank housing 2 is covered with an annular upper cover 10 that does not obstruct the fog outlet of the fog outlet guide 4. The upper end of the annular upper cover 10 is provided with a flared guide surface 81 that facilitates liquid addition into the water tank housing 2.
[0045] As described above, the setting of the flared guide surface 81 at the upper end of the annular upper cover 10 in this case enables, when liquid needs to be added into the water tank housing 2, the annular upper cover 10 not to be opened. As long as the liquid is poured onto the flared guide surface 81, it can fall into the water tank housing 2 along the surface. It is convenient to use and has good practicability.
[0046] As described above, in specific implementation, an annular convex edge 73 is provided on the upper side of the annular groove interface 71. An atomizing cover 11 is snap - connected to the annular convex edge 73, and an atomizing port 111 is provided on the atomizing cover 11.
[0047] As described above, in specific implementation, a second partition 22 is integrally formed between one side of the upper port of the water tank housing 2 and one side of the first partition 21. A space for installing the display module 12 is formed between the second partition 22 and the side wall of the water tank housing 2, which is separated from the liquid storage area. And a display window 13 is correspondingly opened on the side wall of the water tank housing 2.
[0048] As described above, the setting of the second partition 22 in this case enables a space separated from the liquid storage area to be formed between the second partition 22 and the side wall of the water tank housing 2, so as to facilitate the installation of the display module 12, forming an atomizer with the display module 12 on the side wall, thereby improving the market competitiveness.
[0049] In specific implementation, the display module 12 can adopt a touch display module with control functions, so as to facilitate touch input, status display, and operation control, etc.
[0050] As described above, what this case protects is an atomizer structure. All technical solutions that are the same as or similar to this case should be regarded as falling within the protection scope of this case.
Claims
1. An atomizer structure, characterized in that it includes a bottom shell (1) and a water tank shell (2) installed thereon. A first partition body (21) for upper and lower separation is integrally formed in the water tank shell (2). The upper side of the first partition body (21) is a liquid storage area. The first partition body (21) is equipped with an atomizing sheet (3) and a mist outlet guiding member (4) that covers the atomizing sheet (3) and extends upward to near the upper port of the water tank shell (2). An air outlet guiding member (5) that extends upward to near the upper port of the water tank shell (2) is integrally formed on the first partition body (21) outside the mist outlet guiding member (4). A blower (6) for blowing air into the air outlet guiding member (5) is installed at the lower end of the first partition body (21). An air guiding connecting member (7) is provided between the upper end of the mist outlet guiding member (4) and the upper end of the air outlet guiding member (5) for guiding the air in the air outlet guiding member (5) into the mist outlet guiding member (4) and not obstructing the mist outlet of the mist outlet guiding member (4); The air guiding connecting member (7) at the end connected to the mist outlet guiding member (4) is provided with an annular groove interface (71) with an opening facing downward for guiding air into the mist outlet guiding member (4), and a vertical channel (72) that does not obstruct the mist outlet of the mist outlet guiding member (4) is left in the middle of the annular groove interface (71); The air guiding connecting member (7) is detachably clamped with the mist outlet guiding member (4) and the air outlet guiding member (5) up and down respectively. And the height of the inner ring edge (711) of the annular groove interface (71) is lower than the height of the outer ring edge (712) so that the inner ring edge (711) extends into the upper port of the mist outlet guiding member (4); Several downward-extending vertical convex edges (41) are convexly provided on the inner side wall of the upper port of the mist outlet guiding member (4). A wind guiding area (42) is formed between adjacent vertical convex edges (41), which is beneficial to making the air coming out of the annular groove interface (71) flow downward along the inner side wall of the mist outlet guiding member (4) better, forcing the mist liquid in the mist outlet guiding member (4) to spray out vigorously from the vertical channel (72); The upper port of the water tank shell (2) is covered with an annular upper cover (10) that does not obstruct the mist outlet of the mist outlet guiding member (4). A trumpet-shaped guiding surface (81) for facilitating liquid addition into the water tank shell (2) is provided at the upper end of the annular upper cover (10).
2. An atomizer structure according to claim 1, characterized in that a lower groove (211) is provided at the upper end of the first partition body (21). The atomizing sheet (3) is installed at the bottom end of the lower groove (211), and the lower end of the mist outlet guiding member (4) is clamped in the lower groove (211).
3. An atomizer structure according to claim 2, characterized in that an electrolyzer (8) extending into the lower groove (211) is installed at the bottom end of the first partition body (21) and / or an ultraviolet lamp (9) extending into the lower groove (211) is installed at the bottom end of the first partition body (21).
4. An atomizer structure according to claim 3, characterized in that The lower groove (211) is oval-shaped, the lower end outer contour of the mist outlet guide (4) is thick and short and is oval-shaped to fit with the lower groove (211), the upper end outer contour is slender and cylindrical, and a water replenishing hole (40) communicating inside and outside is provided on the side wall of the lower end of the mist outlet guide (4).
5. A nebulizer structure according to claim 1, characterized in that An annular convex edge (73) is provided on the upper side of the annular groove interface (71), a mist outlet cover (11) is snap-fitted on the annular convex edge (73), and a mist outlet (111) is provided on the mist outlet cover (11).
6. A nebulizer structure according to any one of claims 1-5, characterized in that A second partition (22) is integrally formed between one side of the upper port of the water tank housing (2) and one side of the first partition (21). A space for installing a display module (12) is formed between the second partition (22) and the side wall of the water tank housing (2), which is separated from the liquid storage area, and a display window (13) is correspondingly opened on the side wall of the water tank housing (2).
Citation Information
Patent Citations
Humidifier and energy gathering device of humidifier
CN109186056A
Atomizer
CN212120436U